We investigate theoretically an original route to achieve Bose-Einstein condensation using dark power-law laser traps. We propose to create such traps with two crossing blue-detuned Laguerre-Gaussian optical beams. Controlling their azimuthal order $\ell$ allows for the exploration of a multitude of power-law trapping situations in one, two and three dimensions, ranging from the usual harmonic trap to an almost square-well potential, in which a quasi-homogeneous Bose gas can be formed. The usual cigar-shaped and disk-shaped Bose-Einstein condensates obtained in a 1D or 2D harmonic trap take the generic form of a "finger" or of a "hockey puck" in such Laguerre-Gaussian traps. In addition, for a fixed atom number, higher transition temperatur...
This thesis presents the all optical production of 39K Bose-Einstein condensates. A key point in the...
The first realization of Bose-Einstein condensation in 1995 has revolutionized the field of atomic p...
We study Bose-Einstein condensation in a harmonic trap with a dimple potential. We specifically cons...
International audienceWe investigate theoretically an original route to achieve Bose-Einstein conden...
We theoretically investigate the use of red-detuned Laguerre-Gaussian (LG) laser beams of varying az...
This thesis presents work on Bose-Einstein condensates in non-harmonic optical potentials. First, a ...
We use a phase-only spatial light modulator to generate light distributions in which the intensity d...
Optical trapping and manipulation of neutral particles has led to a variety of experiments from stre...
Bose-Einstein condensates (BECs) are in many ways similar to laser light. In Fox-Li-type simulations...
Dipole force traps for dark-field seeking states of atoms and molecules require regions of low inten...
We consider the possibility of a discrete set of energies of a weakly outcoupled atom laser beam to ...
© 2019 American Physical Society. We present a method for producing three-dimensional Bose-Einstein ...
We study a dynamical scheme for condensation of bosonic trapped gases beyond the Lamb-Dicke limit, w...
We produce Bose-Einstein condensates of 6Li2 molecules in a low power (22 W) crossed optical dipole ...
We study an ultracold dilute gas of bosonic atoms in an optical lattice induced by intersecting lase...
This thesis presents the all optical production of 39K Bose-Einstein condensates. A key point in the...
The first realization of Bose-Einstein condensation in 1995 has revolutionized the field of atomic p...
We study Bose-Einstein condensation in a harmonic trap with a dimple potential. We specifically cons...
International audienceWe investigate theoretically an original route to achieve Bose-Einstein conden...
We theoretically investigate the use of red-detuned Laguerre-Gaussian (LG) laser beams of varying az...
This thesis presents work on Bose-Einstein condensates in non-harmonic optical potentials. First, a ...
We use a phase-only spatial light modulator to generate light distributions in which the intensity d...
Optical trapping and manipulation of neutral particles has led to a variety of experiments from stre...
Bose-Einstein condensates (BECs) are in many ways similar to laser light. In Fox-Li-type simulations...
Dipole force traps for dark-field seeking states of atoms and molecules require regions of low inten...
We consider the possibility of a discrete set of energies of a weakly outcoupled atom laser beam to ...
© 2019 American Physical Society. We present a method for producing three-dimensional Bose-Einstein ...
We study a dynamical scheme for condensation of bosonic trapped gases beyond the Lamb-Dicke limit, w...
We produce Bose-Einstein condensates of 6Li2 molecules in a low power (22 W) crossed optical dipole ...
We study an ultracold dilute gas of bosonic atoms in an optical lattice induced by intersecting lase...
This thesis presents the all optical production of 39K Bose-Einstein condensates. A key point in the...
The first realization of Bose-Einstein condensation in 1995 has revolutionized the field of atomic p...
We study Bose-Einstein condensation in a harmonic trap with a dimple potential. We specifically cons...